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三维图像分析系统与巨核细胞定量

3-D image analysis system and megakaryocyte quantitation.

作者信息

Zhang Y J

机构信息

Department of Electrical Engineering, Delft University of Technology, The Netherlands.

出版信息

Cytometry. 1991;12(4):308-15. doi: 10.1002/cyto.990120404.

Abstract

A quasi-automatic computer image analysis system has been developed for 3-D reconstruction of stained serial sections and implemented on an IBAS system. Some new automatic image analysis techniques have been designed and incorporated into the system. For image segmentation, a transition region determination based thresholding method is introduced. Neither histogram calculation nor empirical parameters are needed in the automatic threshold selection. A two step 3-D reconstruction procedure--symbolic and pictorial reconstructions--is designed to improve the flexibility and the computational capability of the system. The global level registration and local level registration are separated. The former consists of establishing the relationship among a large numbers of profile pairs dispersed in adjacent sections. A pattern matching method based on pattern recognition principles is devised to exploit the information about the statistical character of mismatch caused by deformation of sections and about the relationship of nearby objects. For the latter, an equivalent elliptical approximation method based on the physical theory of the rotation of rigid bodies is proposed. The system has been used for 3-D reconstruction and quantitation of megakaryocytes in human bone marrow tissue. Features about individual 3-D megakaryocyte cell and the spatial distribution of megakaryocytes are determined. The latter is a new contribution to megakaryocyte quantitation and is not possible by using conventional stereologic techniques. These experimental results have demonstrated the ability of the system to perform quantitative analysis.

摘要

已开发出一种用于对染色连续切片进行三维重建的准自动计算机图像分析系统,并在IBAS系统上得以实现。设计了一些新的自动图像分析技术并将其纳入该系统。对于图像分割,引入了一种基于过渡区域确定的阈值化方法。在自动阈值选择中既不需要计算直方图也不需要经验参数。设计了一个两步三维重建程序——符号重建和图像重建——以提高系统的灵活性和计算能力。将全局配准和局部配准分开。前者包括在相邻切片中分散的大量轮廓对之间建立关系。设计了一种基于模式识别原理的模式匹配方法,以利用有关切片变形引起的失配统计特征以及附近物体关系的信息。对于后者,提出了一种基于刚体旋转物理理论的等效椭圆近似方法。该系统已用于人体骨髓组织中巨核细胞的三维重建和定量分析。确定了单个三维巨核细胞的特征以及巨核细胞的空间分布。后者是对巨核细胞定量分析的新贡献,而使用传统的体视学技术是不可能做到的。这些实验结果证明了该系统进行定量分析的能力。

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